Easily add capacitive touch functionality to your embedded design with the NXP TWRPI plug-in starter kit.
The DS28E18 is an easy-to-use bridge integrated circuit (IC) that operates as a 1-Wire® slave device to a host controller.
S12ZVML12EVB & S12ZVMC12EVB are 16-bit MCU development boards for S12 MagniV ® S12ZVM, suitable for two-phase DC and three-phase BLDC or PMSM motor control applications, covering S12ZVML128/64/32 and S12ZVMC128/64 MagniV products.
The LPCXpresso55S28 development board provides an ideal platform for evaluation and development of LPC552x/S2x MCUs based on the Arm® Cortex®-M33 architecture. The board includes a high-performance on-board debugger, audio subsystem, and acceleration sensor, with multiple options to add off-the-shelf add-on boards for network, sensor, display, and other interfaces.
The LPCXpresso family of boards provides a powerful and flexible development system for NXP's LPC Cortex®-M family of microcontrollers. They can be used with a wide range of development tools, including NXP MCUXpresso IDE. The LPCXpresso54018, developed by NXP, can be used to evaluate and prototype the LPC540xx series of MCUs.
FRDM-KL27Z is an ultra-low-cost development platform for Kinetis L-series KL17 and KL27 MCUs based on Arm ® Cortex ® -M0+ processors.
This reference design for the MAX2160 tuner plus demodulator IC demonstrates a compact daughter-board solution for the ISDB-T standard (single-segment). This design converts UHF band signals (470MHz to 770MHz) to a MPEG-2 transport stream. The solution is intended for portable applications, such as cell-phone TVs and PDAs.
The temperature is used as the controlled variable in the fermentation process, the ventilation air supply volume is used as the manipulated variable to regulate oxygen, the GD32E231 microcontroller is used as the main control unit, and the output relay controls the fan to regulate oxygen. , through the design of hardware circuits and related application programs, the four processes of fermentation are adjusted to achieve the effects of accelerating compost maturity and improving fertilizer efficiency.
As China's title of "Infrastructure Maniac" becomes widely known, more and more workers are engaged in dangerous jobs, such as high altitude, underground, tunnels, and engineering vehicles. In order to ensure the safety of these construction workers and ensure timely rescue in the event of an accident, I designed this safety black box for engineering personnel. This equipment can collect the heart rate of construction workers, the temperature and humidity of the surrounding environment, identify the state of movement, and determine whether a fall or collision accident has occurred. It is transmitted to the remote monitoring center through the network. Once the monitoring personnel find an abnormality, they can immediately organize rescue.
The MAXREFDES61# reference design ushers in the era of Industry 4.0. With a complete analog front-end for the next generation of ultra-small programmable logic controllers, this design meets the higher resolution and higher voltage needs of industrial control and industrial automation applications, while consuming minimal power and space. This high-performance system features four channels of analog input, a complete, efficient power-supply system and on-board processing. Hardware and firmware design files as well as FFTs and histograms from lab measurements are provided.
All 12 I/O pins of this design are broken out to 0.1" headers. All 4 TX/RX channels and the reference clock are broken out to SMA connections.
Share license plate recognition control board schematic + 3D PCB
The Nano120 series used in this solution has passed EMV 2000 and China PBOC3.0 of Level 1 contact certification. It is used in USB transfer payment card readers and has ISO7816-3x3 smart card interface, anti-tamper detection pins, and anti-theft copy lock code bit functions. , 96-bit UID chip unique code, 128-bit UCID customer unique code, strong anti-interference ability (8kV ESD, EFT 4kV) and other features.
This reference design is a complete RF front-end solution for a GPS receiver using Maxim's MAX2769 GPS receiver chip. The MAX2769 is a low cost, single conversion, low IF GPS receiver that offers two integrated LNAs with different specifications, I/Q channel filters with variable bandwidth and order, and a digital IF output that supports 1-bit and 2-bit operation. This reference design offers high performance, small size, and low BOM cost.